ASTM C1156-2003 Standard Guide for Establishing Calibration for a Measurement Method Used to Analyze Nuclear Fuel Cycle Materials《用于分析核燃料循环材料的测量方法用校准方法的确定的标准指南》.pdf
《ASTM C1156-2003 Standard Guide for Establishing Calibration for a Measurement Method Used to Analyze Nuclear Fuel Cycle Materials《用于分析核燃料循环材料的测量方法用校准方法的确定的标准指南》.pdf》由会员分享,可在线阅读,更多相关《ASTM C1156-2003 Standard Guide for Establishing Calibration for a Measurement Method Used to Analyze Nuclear Fuel Cycle Materials《用于分析核燃料循环材料的测量方法用校准方法的确定的标准指南》.pdf(3页珍藏版)》请在麦多课文档分享上搜索。
1、Designation: C 1156 03Standard Guide forEstablishing Calibration for a Measurement Method Used toAnalyze Nuclear Fuel Cycle Materials1This standard is issued under the fixed designation C 1156; the number immediately following the designation indicates the year oforiginal adoption or, in the case of
2、 revision, the year of last revision. A number in parentheses indicates the year of last reapproval. Asuperscript epsilon (e) indicates an editorial change since the last revision or reapproval.1. Scope1.1 This guide provides the basis for establishing calibrationfor a measurement method typically u
3、sed in an analyticalchemistry laboratory analyzing nuclear materials. Guidance isincluded for such activities as preparing a calibration proce-dure, selecting a calibration standard, controlling calibratedequipment, and documenting calibration. The guide is genericand any required technical informat
4、ion specific for a givenmethod must be obtained from other sources.1.2 The guidance information is provided in the followingsections:SectionGeneral Considerations 4Calibration Procedure 5Calibration Standard 6Control of Calibrated Equipment 7Documentation 8Keywords 91.3 This standard does not purpor
5、t to address all of thesafety concerns, if any, associated with its use. It is theresponsibility of the user of this standard to establish appro-priate safety and health practices and determine the applica-bility of regulatory limitations prior to use.2. Referenced Documents2.1 ASTM Standards:C 1009
6、 Guide for Establishing a Quality Assurance Pro-gram for Analytical Chemistry Laboratories Within theNuclear Industry2C 1068 Guide for Qualification of Measurement Methodsby a Laboratory Within the Nuclear Industry2C 1128 Guide for Preparation of Working Reference Mate-rials for Use in the Analysis
7、of Nuclear Fuel CycleMaterials2C 1210 Guide for Establishing a Measurement SystemQuality Control Program for Analytical Chemistry Labo-ratories Within the Nuclear Industry2C 1215 Guide for Preparing and Interpreting Precision andBias Statements in Test Method Standards Used in theNuclear Industry2C
8、1297 Guide for Qualification of Laboratory Analysts forthe Analysis of Nuclear Fuel Cycle Materials22.2 ISO Standard:ISO 17025 General Requirements for the Competence ofCalibration and Testing Laboratories33. Significance and Use3.1 Calibration is a fundamental part of making measure-ments and its e
9、ffect on the quality of measurement data issignificant. Thus, sufficient attention must be given to calibra-tion when it is established for a measurement method so thatthe data produced will be acceptable. The use of an inappro-priate calibration standard, inadequate instructions for calibra-tion, a
10、nd poor documentation of the calibration process areexamples of circumstances that can adversely affect the valid-ity of a calibration. Thus, the calibration process must conformto criteria established to ensure the validity of calibrationresults. Such criteria are given in Guide C 1009, in whichcal
11、ibration is identified as a component of laboratory qualityassurance (see Fig. 1). This guide expands upon those criteriato provide more comprehensive guidance for establishingcalibration.3.2 The manner of calibration and other technical require-ments for calibrating a measurement method are usually
12、established when a method is first introduced into a laboratory,which may be through validation and qualification as definedby Guide C 1068 (see Fig. 1). However, calibration involvesmore than the technical aspects of the calibration process. Theother dimension of the process is the operational requ
13、irementsthat are necessary to ensure that calibration results are validand that they are documented and verifiable should their1This guide is under the jurisdiction of ASTM Committee C26 on Nuclear FuelCycle and is the direct responsibility of Subcommittee C26.08 on Quality Assur-ance, Statistical A
14、pplications, and Reference Materials.Current edition approved July 10, 2003. Published August 2003. Originallyapproved in 1990. Last previous edition approved in 1995 as C 1156 95e1.2Annual Book of ASTM Standards, Vol 12.01.3Available from American National Standards Institute, 11 W. 42nd St., 13thF
15、loor, New York, NY 100361Copyright ASTM International, 100 Barr Harbor Drive, PO Box C700, West Conshohocken, PA 19428-2959, United States.integrity be questioned. The provisions of this guide providethose operational requirements and should be consideredwhenever calibration is planned and establish
16、ed.4. General Considerations4.1 The degree of attention and effort given to calibrationshould depend on how the measurement data are to be used. Inthe analysis of nuclear materials, for example, measurementdata produced for the control and accountability of nuclearmaterial would normally require mor
17、e attention than dataproduced for process control during the processing of thatmaterial. The areas in which the level of attention and effortcould vary are: the calibration standard, number of calibrationpoints, frequency of calibration, and frequency of calibrationverification.4.2 Many of the provi
18、sions of this guide would not apply tothe calibration of certain instruments when their calibration isan integral part of the analysis procedure involving a simpleone- or two-step adjustment of a meter or gage. The pH meteris an example when a buffer is used to adjust the meter justbefore a pH readi
19、ng is taken for a sample solution.4.3 There are generally two approaches regarding frequencyof calibration. In one case, the method is calibrated each timeit is used. In the other, calibration is established for a specifiedperiod of time, and the method must be recalibrated before thattime period el
20、apses to retain calibration. When a calibrationperiod is used, calibration verification should be used. Acalibration period might be defined in terms of weeks ormonths, or defined as a run of a series of samples over arelatively short period of time. In the latter case, calibrationverification could
21、 involve analyzing a standard periodicallyduring the sample run, for example, after every fifth sample.4.4 When calibration is being planned and established, astatistician should be consulted regarding the treatment ofcalibration data, the frequency of calibration, the frequency ofcalibration checks
22、, and the criteria that determine when cali-bration has been achieved (see Guide C 1215).4.5 The organizational responsibility and authority for cali-bration should be defined and documented. Normally, respon-sibility for calibrating an individual method rests with theanalyst using the method. If th
23、e responsibility for calibrating aninstrument or class of instruments is contracted to anotherorganization, the laboratory is still responsible for ensuring thatcalibration requirements are being met by the organizationdoing the calibration.5. Calibration Procedure5.1 Calibration should be establish
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